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Development of a Method to Determine Electron Density and Effective Atomic Number of High Atomic Number Solid Materials Using Dual-Energy Computed Tomography

机译:利用双能计算机断层扫描技术确定高原子数固体材料的电子密度和有效原子数的方法的发展

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Aim: This study aims to develop a method using dual-energy computed tomography (DECT) to determine the effective atomic number and electron density of substances. Materials and Methods: Ten chemical substances of pure analytical grade were obtained from various manufacturers. These chemicals were pelletized using a hydraulic press. These pellets were scanned using DECT. A relation was obtained for the pellet's atomic number and electron density with their CT number or Hounsfield unit (HU) values. Calibration coefficients were determined. Five new chemical pellets were scanned, and their effective atomic number and electron densities were determined using the calibration coefficients to test the efficacy of the calibration method. Results: The results obtained for effective atomic number and electron density from the HU number of DECT images were within ±5% and ±3%, respectively, of their actual values. Conclusions: DECT can be used as an effective tool for determining the effective atomic number and electron density of high atomic number substance.
机译:目的:本研究旨在开发一种使用双能计算机断层扫描(DECT)来确定物质的有效原子序数和电子密度的方法。材料和方法:从各种制造商处获得十种纯分析纯的化学物质。使用液压机将这些化学品造粒。使用DECT扫描这些沉淀。获得了颗粒的原子序数和电子密度与它们的CT数或Hounsfield单位(HU)值的关系。确定校准系数。扫描了五个新的化学颗粒,并使用校准系数确定了它们的有效原子序数和电子密度,以测试校准方法的有效性。结果:从DECT图像的HU数获得的有效原子序数和电子密度的结果分别在其实际值的±5%和±3%之内。结论:DECT可作为测定高原子序数物质的有效原子序数和电子密度的有效工具。

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